PPT-Injection and extraction systems for the CLIC DR

Author : alida-meadow | Published Date : 2016-06-11

R Apsimon Content Cell design and parameterisation Optimisation methods and comparison Constraints and limitations of parameter space Summary of optimised parameters

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Injection and extraction systems for the CLIC DR: Transcript


R Apsimon Content Cell design and parameterisation Optimisation methods and comparison Constraints and limitations of parameter space Summary of optimised parameters MADX matching and tracking results. Scheme. in the (80 km) TOE: Tunnel Of . Everything. Lucio Rossi, Attilio Milanese and Davide Tommasini. CERN. Work. of H. . Piekarz. (FNAL) . widely. . used. HE-LHC . c. ost. : . rough . evalution. Steve Werkema. 10 March 2010. Our piece of the action. 3/10/2010. 2. P1-P2-AP1-AP3. Accumulator. Acc - Deb. Debuncher. Abort line(s). Mu2e Cycle (Hybrid A). 3/10/2010. 3. Accumulator. Debuncher. Kickers and septa. Injection methods. Single-turn hadron injection. Injection errors, filamentation and blow-up. Multi-turn hadron injection. Charge-exchange H- injection. Lepton injection. Extraction methods. R Apsimon. Content. Cell design and parameterisation. Optimisation methods and comparison. Constraints and limitations of parameter space. Summary of optimised parameters. MADX matching and tracking results. W. Bartmann, C. Bracco, E. Carlier, L. Ducimetiere, C. . Hessler. , N. Magnin, V. Senaj, J. Wenninger, C. Wiesner. MPP, 31. st. March 2017. Outline. SPS extraction, transfer, LHC injection. LBDS. MKB coupling mitigation. Stéphane. Bart Pedersen. BE-BI-SW November 201. 1. Old PS Orbit (. CODD. ) sys. tem. Before the TMS. Trajectories from the 40 pickups, for max 2 turns and one bunch at a given CTIM. Mean Radial Position acquired along the cycle every 5ms. Transfer lines: Transverse matching. Single turn injection. Multi-turn injection for protons and heavy ions. Charge exchange injection for protons. Leptons, . betatron. and synchrotron injection . G. Riddone, 02/02/2010. 1. Content. Introduction to RF . structures and . components. Fabrication baseline procedure for accelerating structures . Application to CERN ac. structure fabrication. Fabrication of PETS . 3 . TeV. Many new agreements for X-band development and machines recently . One new coll. inst. (Canadian Light Source, Saskatoon) . WEB pages . Nikos . Kokkinis. has taken over as . responsible from . for the Neutrino . Program . at Fermilab. Chandra Bhat. Fermilab. Acknowledgements. W. . Pellico. , C. . Drennan. , K. Triplett, S. . Chaurize. , . K. . Seiya. , F. Garcia, B. Hendricks, . T. . . Sullivan and A. Waller. Chandra Bhat. Fermilab. Acknowledgements. W. . Pellico. , B. Chase, S. . Chaurize. , . C. . Drennan. , F. Garcia, B. . Hendrick. , . J. Nelson*, K. . . Seiya. , . T. . Sullivan, C. Y. Tan. , . K. Triplett, M.-J. Yang. accelerating structure design. 21/10/2010. A.Grudiev. (CERN). RF design constraints for CLIC. Beam dynamics (BD) constraints based on the simulation of the main . linac. , BDS and beam-beam collision at the IP:. Report from Discussion Session. Jose Alonso. 1. Charge (Per Janet). Credible case needs to be made to DUSEL in very near future. Address relevant technical (not cost, now) issues. What questions need to be answered related to feasibility of accelerator concept?. Dr Rob Apsimon. Dr . Öznur. Mete. What you will learn. You will learn to use the follow new MADX commands:. Seqedit. : edit and existing sequence. Don’t need to rewrite the entire sequence from scratch!.

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